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Updated: Jun 23, 2025

Flow Cytometry-based Assay for the Monitoring of NK Cell Functions
Published on: October 30, 2016
NK cells with adhesion defects and reduced cytotoxic functions are associated with a poor prognosis in multiple
Eve Blanquart1, Rüçhan Ekren1, Bineta Rigaud1
1Cancer Research Center of Toulouse, INSERM, Centre National de la Recherche Scientifique, Université Toulouse III-Paul Sabatier, Toulouse, France.
Abstract:
The promising results obtained with immunotherapeutic approaches for multiple myeloma (MM) call for a better stratification of patients based on immune components. The most pressing being cytotoxic lymphocytes such as natural killer (NK) cells that are mandatory for MM surveillance and therapy. Here, we performed a single-cell RNA sequencing analysis of NK cells from 10 patients with MM and 10 age/sex-matched healthy donors that revealed important transcriptomic changes in the NK cell landscape affecting both the bone marrow (BM) and peripheral blood compartment. The frequency of mature cytotoxic CD56dim NK cell subsets was reduced in patients with MM at the advantage of late-stage NK cell subsets expressing NF-κB and interferon-I inflammatory signatures. These NK cell subsets accumulating in patients with MM were characterized by low CD16 and CD226 expression and poor cytotoxic functions. MM CD16/CD226Lo NK cells also had adhesion defects with reduced lymphocyte function-associated antigen 1 (LFA-1) integrin activation and actin polymerization that may account for their limited effector functions in vitro. Finally, analysis of BM-infiltrating NK cells in a retrospective cohort of 177 patients with MM from the Intergroupe Francophone du Myélome (IFM) 2009 trial demonstrated that a high frequency of NK cells and their low CD16 and CD226 expression were associated with a shorter overall survival. Thus, CD16/CD226Lo NK cells with reduced effector functions accumulate along MM development and negatively affect patients' clinical outcomes. Given the growing interest in harnessing NK cells to treat myeloma, this improved knowledge around MM-associated NK cell dysfunction will stimulate the development of more efficient immunotherapeutic drugs against MM.
Insights
Natural killer (NK) cells in multiple myeloma (MM) patients show reduced cytotoxic function due to low CD16/CD226 expression. This NK cell dysfunction accumulates during MM progression, negatively impacting survival and informing new immunotherapies.
Area of Science:
- Immunology
- Hematology
- Oncology
Background:
- Immunotherapy shows promise for multiple myeloma (MM).
- Stratification of MM patients by immune components, particularly cytotoxic natural killer (NK) cells, is crucial for effective therapy.
- NK cells are vital for MM surveillance and treatment response.
Purpose of the Study:
- To investigate the transcriptomic changes and functional alterations of NK cells in patients with MM.
- To identify specific NK cell subsets associated with MM development and clinical outcomes.
- To understand the mechanisms underlying NK cell dysfunction in the context of MM.
Main Methods:
- Single-cell RNA sequencing of NK cells from 10 MM patients and 10 healthy donors.
- Analysis of NK cell subsets, gene expression, and functional characteristics (cytotoxicity, adhesion).
- Retrospective analysis of bone marrow-infiltrating NK cells from 177 MM patients in the IFM 2009 trial.
Main Results:
- MM patients exhibit reduced mature CD56dim NK cells and an increase in late-stage NK cell subsets with inflammatory signatures.
- These accumulating NK cells (CD16/CD226Lo) display impaired cytotoxic functions, reduced CD16 and CD226 expression, and adhesion defects.
- High frequency of NK cells and low CD16/CD226 expression in bone marrow-infiltrating NK cells correlated with shorter overall survival in MM patients.
Conclusions:
- Dysfunctional CD16/CD226Lo NK cells accumulate during MM progression, contributing to poor clinical outcomes.
- These findings highlight NK cell dysfunction as a key factor in MM pathogenesis.
- Understanding MM-associated NK cell dysfunction can guide the development of novel and more effective immunotherapeutic strategies for MM.
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